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Pilz: Three levels of security verification, tailored for users

Pilz’s safety validation services for plants and machines can now be tailored to your needs, with a choice of three different validation levels. This guarantees an efficient service tailored to individual requirements, so that plants and machines are designed in compliance with standards and with maximum safety.

After risk assessment, the establishment of a safety concept, the safety design and the implementation of the system, safety validation is the final step in achieving safe commissioning of plants and machines. Its aim is to ensure that protective measures are correctly implemented and that the safety systems are fully operational. International standards such as ISO 13849, IEC 62061 and IEC 61508 form the basis for safety validation. These standards stipulate that the machine manufacturer or operator must regularly confirm that the safety design has been correctly implemented.

However, depending on the specific application, the requirements may differ: Does it involve additional machines of an already validated type? Are minor changes to the machine made? Or are complex and major changes to the machine necessary, so that a new CE certification is necessary? Which level of validation is appropriate in each case?

Customer-centric

Pilz offers tailor-made validation support and has expanded its range of machinery safety services for the future. “Until now, we have offered validation as a complete service portfolio”, says John McAuliffe, Vice President of Pilz International Services Group. “However, in some cases, such as when buying a machine from a manufacturer with whom you already have a good working relationship, when an identical machine is already installed or when making small changes to an existing machine, then a proportional check may be sufficient.”

Based on proven methods and many years of validation expertise, automation specialist Pilz now offers a different range of independent safety validations. Manufacturers and operators are able to obtain validations that are individually tailored to their individual needs, as well as confirmation of compliance with the relevant standards, which means greater efficiency during implementation.

Three tailored levels

Level 1 validation encompasses basic checks that highlight critical non-conformities, while level 2 carries out more thorough checks, particularly in terms of functional safety, which ensure that the machine provides adequate safety measures. Level 3 validation services are in-depth, detailed conformity checks, which are also CE-compliant. At all three levels, machine manufacturers and operators benefit from the expertise of Pilz experts.
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Behind the Shanghai Auto Show: Siemens helps the automotive industry move towards a new era of green intelligence

As the world’s first A-class auto show in 2023, the Shanghai International Automobile Industry Exhibition kicked off yesterday, and many new technologies, new products and new concepts have become the focus of the market.

By 2022, China has ranked first in the world in automobile production and sales for 14 consecutive years. At present, around the new transformation trend of “electrification, networking, intelligence and sharing”, many car companies are actively laying out new tracks and accelerating towards a new era of green intelligence. Behind the transformation and upgrading of the automobile industry, Siemens continues to contribute scientific and technological strength.

Just yesterday, Dr. Xiao Song, Chairman, President and CEO of Siemens China, attended the Shanghai International Auto Show and had in-depth communication and exchanges with many entrepreneurs to discuss cooperation and seek common development.

Xiao Song, Chairman, President and CEO of Siemens China, said that the automobile industry is one of the pillar industries of China’s economy, plays an important role in boosting consumption and stabilizing the overall economy, and is also a key tool for China to develop a digital economy and achieve the “dual carbon” goal. With the “dual-wheel drive” of digitalization and low-carbonization, combined with deep industry knowledge and experience, we will continue to work closely with automobile companies to expand new opportunities, create new advantages, and accelerate the high-quality development of the industry.

At the auto show, Dr. Xiao Song witnessed the signing of a strategic cooperation agreement between Siemens and Xiaopeng Motors. The two parties will rely on Siemens’ innovative technology and industry insights in the fields of industrial digitalization, smart parks, smart energy, and green and low-carbon development to help Xiaopeng Motors actively explore new models of intelligent manufacturing for the future.

Chery was very international at this Shanghai Auto Show, fully displaying 14 new energy vehicles from its four major brands. Siemens and Chery have been cooperating for nearly 20 years, and the two parties are actively deepening their long-term cooperation in digital R&D, manufacturing, integrated energy management, green and low-carbon development, and other fields.

The Lotus booth was particularly eye-catching at this auto show, allowing the audience to experience the charm of cutting-edge technology firsthand. From automation hardware to data management and simulation software, Siemens’ “digital twin” technology is helping Lotus factories break information silos and improve efficiency and flexibility from R&D to manufacturing.

At this auto show, auto parts manufacturer Schaeffler focused on three major areas: electrification, chassis applications and commercial vehicles, and displayed a series of innovative products and solutions. Schaeffler has extensive cooperation with Siemens. Among them, Schaeffler’s benchmark factory in Taicang, Jiangsu, applied Siemens’ low-code development platform to establish a complete set of paperless solutions, significantly improving resource efficiency.
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Spirit AeroSystems to temporarily lay off 700 employees as Boeing machinists strike continues

Boeing supplier Spirit AeroSystems will temporarily lay off about 700 workers as the plane maker’s machinists’ strike enters its sixth week, a spokesman for the supplier said Friday.

More than 32,000 Boeing workers went on strike on Sept. 13 after overwhelmingly voting to reject a tentative labor agreement with Boeing, adding to the plane maker’s financial pressures and creating new challenges for CEO Kelly Ortberg, who took over more than two months ago.

The furloughs will affect about 5% of Spirit’s U.S. workforce, according to Spirit’s latest annual report, at its largest plant in Wichita, Kansas., or about 5% of the company’s U.S. workforce. Meanwhile, Boeing and its machinists’ union remain in an impasse, and Spirit is considering further layoffs.

“If the strike continues beyond November, we will have to implement layoffs and additional furloughs,” Spirit spokesman Joe Buccino told CNBC on Friday.

Ortberg will hold his first earnings call with investors next Wednesday. Last week, as the company’s losses continued to mount, Ortberg announced a series of major measures aimed at cutting costs, including a 10% layoff of about 17,000 employees. Boeing will also stop commercial production of the 767 after orders are completed in 2027, and said its long-delayed 777X wide-body jet will not debut until 2026, pushing production back another year.

Boeing is raising liquidity through debt or equity.

Buccino said the Spirit employees affected by the 21-day furloughs are about 700 people who work on Boeing’s 777 and 767 programs, for which Spirit has stockpiled “significant inventory.” He added that Spirit employees working on Boeing’s best-selling 737 Max are not affected. Still, work on all three programs has been stalled by the strike.

Boeing agreed to acquire Spirit this summer, but the two companies don’t expect the deal to close until mid-2025. Reuters earlier reported the latest furloughs at Spirit.
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Fault Tracing of Load Cells, Junction Boxes and wiring

The load cell is very robust and can withstand high overloads. The data of a Pressductor load cell does not change slowly, but in steps, usually in connection with an event in the mill. Excessive overloading usually results in permanent shifting of the zero point. Poor contact in the junction box causes intermittent faults. Both sensitivity and zero point may vary. Check all screw terminals. Do not use pins crimped to the connecting wires, as these often work

loose after a time.

The cabling, especially the cable to the load cell, is the part that is most exposed to damage.

Since the resistance of the load cell windings is low, it is easy to check the load cells and cabling from the control unit.

Typical readings are 2 Ω for the resistance of the primary winding and 9-12 Ω for the output impedance of the secondary winding.

Insulation faults in the cabling or the load cell may cause incorrect sensitivity or unstable zero point.

When the load cell circuits have been isolated from earth and from the control unit at the disconnectable terminals, it is easy to measure the insulation from the control unit.

If the cables are not routed correctly, they may pick up interference from other cables.

Pressductor PillowBlock load cells

Introduction

ABB’s Pressductor® PillowBlock load cells are sensitive and accurate yet rugged, reliable andcompact. The performace of the Pressductor PillowBlock load cells is unsurpassed for paper mill applications characterized by heavy rolls, high speeds and severe conditions – in some instances they are the only viable option. They can withstand high overloads and vibrations, and operate over a wide range of tensions.

The well-proven Pressductor load cells combined with the tension electronics, offer an easy-to-use/ user-friendly web tension measurement system with superior long term performance leadingto higher productivity and product quality and higher profit for the web producer.

Increased process uptime

In a web process running continuously, every minute of production time is precious. Even so, no production line runs without downtime. With Pressductor PillowBlock load cells the risk of web breaks can be reduced to a minimum, thus leaving as much time as possible for real production.

Thanks to a strong and stable signal deriving from the Pillow-Block load cells, the upcoming web breaks are kept to an absolute minimum level.

Tighter product tolerances

The ability to produce web to tighter tolerances minimizes the costs associated with nonconforming web. It also increases the web producer’s accessible market to include products with tighter tolerance requirements.

Pressductor PillowBlock load cells 50 years of experience

Minimize maintenance

Share the experience, of virtually maintenance-free load cells, with thousands of other PillowBlock users. A robust load cell design with no fragile or ageing components makes this possible.

Thanks to its robust design, the PillowBlock load cells work consistently for many years without any need for maintenance, also in the toughest paper mill applications.

Fast access to support and service

ABB provides customers with superior distinctive after sales service that really differentiates from the competition. You obtain advanced solutions to problems, service and professional consultation through our After Sales Service program. Expert engineers with extensive experience of all types of Force Measurement products are available to assist you through our world-wide network.

There is a PillowBlock load cell suitable for most web processing machinery used in the paper processing industries

In the paper industry, the PillowBlock load cells are ideal in wire, press and dryer sections as well as in coaters, calenders and winders.

In the converting industry, the PillowBlock load cells have proven their superior performance in laminator and coater machinery.

The Pressductor difference

Like ABB’s other load cells based on Pressductor

Technology, PillowBlock load cells rely on electromagnetic changes in the transducer, not on physical movement, to sense fluctuations in web tension. The Pressductor Technology operating principle provides exceptional improvements in load cell performance characteristics, including reliability (notably absence of drift), durability, repeatability, and wider measurement range.

Machined from a solid block of steel, the load cells are rugged and stiff, affording high overload protection as well as an extended measurement range above the nominal load. And they do not contribute to machine vibration, even at high speeds.

Since the transducer action – the magnetic flux

– takes place inside a steel core, environmental factors like dirt or fluids can’t degrade performance and reliability. These stainless steel load cells don’t require any physical seals.

Furthermore, low transducer impedance

– less than a couple of ohms – helps eliminate susceptibility to radio-frequency and electromagnetic interference.

Pressductor PillowBlock load cells Ideal for paper and converting industry

Designers appreciate:

• Remarkably high spring constant

• Wide measurement range

• High reliability

Operators value a load cell with:

• No drift

• No need for recalibration

• No failures

• High reliability

Measurement essentials

Keeping the tension constant in web processes is essential for high product quality and productivity.

Continuously measuring the tension is an obvious prerequisite for tension control. Drives and operator instruments need quick and accurate input to regulate tension levels and monitor machine performance.

Most web processing lines put a premium on long-term reliability, in addition to accuracy and overall performance. The measurement system, after all, is the front line of machine control, exposed to all the rigors of the operating environment. The costs associated with downtime and poor product bring out the true value of its components.

Quality measurement technology for superior tension control that will keep your processing

lines productive and producing top-notch output

– that’s what you can expect from us. We’re entirely devoted to providing process measurement systems and services, and we have 60 years of experience in the field. We are the experts in web and strip tension as well as force measurement for virtually any purpose.

Selecting and sizing load cells

The two types of ABB PillowBlock load cells are designed for either conventional vertical force measurement or for sensing the horizontal force component that may arise as the processed material partially wraps around a measurementroll.

Using the horizontal load cells can be quite advantageous. By design, they can be made exceptionally sturdy, rugged, and stiff.

So, requirements for recalibration, other maintenance, or replacement are negligible, and they do not contribute to machine vibration.

Since they don’t measure the tare weight, but just the horizontal force component of the web tension, they can be sized smaller than otherwise possible,measuring tension with greater accuracy.

Application requirements may dictate the selection of a vertical load cell. But whenever an adequate horizontal force component is present (or can be developed), the horizontal load cell should be considered.

The size, or nominal load, of a load cell is contingent on the anticipated force it will measure. When a vertical load cell is mounted horizontally (the most common arrangement), the measurement force (FR) is a function of the tension in the web (T), the deflection angles (α and β), and the tare weight of the roll and bearings (Tare).

The horizontal load cell senses the web tension’s (T) horizontal component (FR); not the vertical force (FV).

In this scenario, the measurement force (FR) is a function of only the tension in the web (T) and the web angles (α and β). Since the tare force (the weight of the deflector roll and bearings) will not be measured, it can be very large compared to the web tension without affecting the accuracy of the tension measurement.
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